An example automatic document feeder device includes a document tray, a pair of rollers, at least one controller that automatically adjusts a height of the document tray and the pair of rollers based on an amount of media contained on the document tray, Sand a slide aligned to the pair of rollers to alter a media pathway distance as the height of the pair of rollers changes. The controller may adjust the height of the document tray independently from adjusting the height of the pair of rollers. A guide may be provided adjacent to the document tray, wherein the guide may bend as the height of the document tray increases. A sensor may determine a thickness of media contained on the document tray.
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1. An automatic document feeder device comprising:
a document tray;
a pair of rollers;
at least one controller that automatically adjusts a height of the document tray and the pair of rollers based on an amount of media contained on the document tray, wherein the at least one controller is to adjust the height of the document tray independently from adjusting the height of the pair of rollers; and
a slide aligned to the pair of rollers to alter a media pathway distance as the height of the pair of rollers changes.
7. A device comprising:
an automatic document feeder tray;
at least one media output roller;
a control system to automatically adjust a height of the automatic document feeder tray and the at least one media output roller based on a height of media contained on the automatic document feeder tray, wherein the control system is operable to adjust the height of the automatic document feeder tray independently from adjusting the height of the at least one media output roller; and
a guide in between the automatic document feeder tray and the at least one media output roller to provide a clear media discharge path emanating from the at least one media output roller.
12. An apparatus comprising:
an automatic document feeder tray to hold media;
at least one media output roller comprising rotational and translational movement;
a sensor adjacent to the automatic feeder tray; and
a processor to:
receive a measurement of a thickness of the media on the automatic document feeder tray from the sensor; and
send a signal to adjust a height of the automatic document feeder tray and the at least one media output roller based on the measured thickness of the media, wherein the processor is operable to adjust the height of the automatic document feeder tray independently from adjusting the height of the at least one media output roller.
2. The automatic document feeder device of
3. The automatic document feeder device of
4. The automatic document feeder device of
5. The automatic document feeder device of
6. The automatic document feeder device of
8. The device of
9. The device of
10. The device of
a mechanism to rest on the media on the automatic document feeder tray; and
a sensor to determine a pivot angle of the mechanism as the height of the media on the automatic document feeder tray decreases.
11. The device of
a first motor to automatically adjust the height of the automatic document feeder tray based on the height of media contained on the automatic document feeder tray; and
a second motor to automatically adjust the height of at least one media output roller based on the height of media contained on the automatic document feeder tray.
13. The apparatus of
a slide aligned to the at least one media output roller, wherein the slide is to alter a media pathway distance for the media as the at least one media output roller translationally moves; and
a guide separating the automatic document feeder tray from the at least one media output roller, wherein the guide is to provide an unobstructed media discharge path between a discharge of the at least one media output roller and an area underneath the automatic document feeder tray.
14. The apparatus of
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An automatic document feeder permits sheets of paper to be inserted into a copier or scanner automatically without requiring a user to manually insert the sheets.
For machines such as enterprise scanners, customers are often looking for higher document feeder input capacity, especially for large scan jobs. In large capacity jobs containing dozens or even hundreds of sheets of paper, the automatic document feeder may need to be adjusted to accommodate the sheets. Typically, the entire height of the machine increases by the sum of the input height and output height of the automatic document feeder. When the entire machine's height increases, the raw material, shipping/packaging, and manufacturing costs similarly increase and the extra height often results in a chunky, and aesthetically displeasing configuration. The examples described herein provide a technique to adjust the input capacity of an automatic document feeder while also adjusting the output capacity of the printed/scanned/copied documents without increasing the total height of the automatic document feeder. The output rollers, through which the media; e.g., sheets of paper, etc. exits the printer/scanner moves up/down and possibly laterally according to the up/down movement of the automatic document feeder. As referred to herein, the term media may refer to one or more sheets of paper or any other media suitable for insertion into a machine such as a printer, scanner, copier, or fax machine, etc.
The examples described herein provide an automatic document feeder device comprising a document tray, a pair of rollers, at least one controller that automatically adjusts a height of the document tray and the pair of rollers based on an amount of media contained on the document tray, and a slide aligned to the pair of rollers to alter a media pathway distance as the height of the pair of rollers changes. In an example, the at least one controller is to adjust the height of the document tray independently from adjusting the height of the pair of rollers. In an example, the at least one controller comprises a first controller that automatically adjusts the height of the document tray, and a second controller that automatically adjusts the height of the pair of rollers.
According to an example, the automatic document feeder device comprises a guide adjacent to the document tray, wherein the guide is to bend as the height of the document tray increases. The slide comprises any of a flexible, stretchable, bendable, and telescoping slide, according to various examples. In an example, the automatic document feeder device comprises a slot retaining at least a portion of the slide, wherein the slide is to move with respect to the slot as the height of the pair of rollers changes. The automatic document feeder device comprises a sensor to determine a thickness of media contained on the document tray, according to an example.
The media pathway distance D represents the distance that the media 25 travels inside a machine such as a printer, scanner, copier, fax machine, etc. When the height H2 of the pair of rollers 15 changes, then the corresponding media pathway distance D also changes since the distance from the scan modules, which are not shown in
In the various figures, the dashed lines shown for the document tray 10, pair of rollers 15, media 25, controller 20, slide 30, and media pathway distance D represent the positioning of the document tray 10, pair of rollers 15, controller 20, media 25, slide 30, and media pathway distance D after the height adjustment occurs; i.e., after the document tray 10 moves up by height H1 and the pair of rollers 15 move up by height H2. The controller 20 may be either moveable or stationary, e.g., moving or not moving up/down, according to various examples. In one example, the at least one controller 20 adjusts the height H1 of the document tray 10 independently from adjusting the height H2 of the pair of rollers 15. In another example, the at least one controller 20 adjusts the height H2 of the pair of rollers 15 upon adjusting the height H1 of the document tray 10 such that the corresponding adjustments of the heights H1 and H2 of the document tray 10 and the pair of rollers 15 may occur simultaneously, or may be delayed such that the height H1 of the document tray 10 is adjusted first followed by adjustment of the height H2 of the pair of rollers 15 at some certain time delay thereafter.
The device 5 may comprise a slot 40 retaining at least a portion of the slide 30, wherein the slide 30 is able to move with respect to the slot 40 as the height H2 of the pair of rollers 15 changes. In this configuration, the slide 30 may be rigid or it may be any of a flexible, stretchable, bendable, and telescoping slide 30. Because at least a portion of the slide 30 is positioned in the slot 40, the slide 30 may be rigid such that it moves translationally within the slot 40 to alter the length of the exposed slide 30; e.g., not within the slot 40, between the scan modules and the output rollers 15 in the machine.
The device 5 may comprise a sensor 45 to determine a thickness; e.g., height H3 of the media 25 contained on the document tray 10. The sensor 45 may include an optical sensor, a scale to measure mass/weight, a counter, or any other type of sensing device capable of determining how many sheets of media 25 are on the document tray 10 and the reduction in sheets as the media 25 is continuously fed into the machine until no remaining media 25 remains on the document tray 10. Alternatively, the sensor 45 may comprise a laser rangefinder system, force gauge, or spring force sensor to detect the changes in height H1 of the document tray 10. In one example, the sensor 45 is positioned adjacent to or in the document tray 10. In other examples, the sensor 45 may be positioned at an appropriate location to conduct the suitable sensing activity of the media 25 and/or the document tray 10.
Similar to device 5, in an example, device 6 may comprise a slide 30 aligned to the at least one media output roller 15, wherein the slide 30 alters a media pathway distance D as the height H2 of the at least one media output roller 15 changes. Again, the slide 30 may be rigid or it may be any of a flexible, stretchable, bendable, and telescoping slide 30. The guide 35 may bend away from the at least one media output roller 15 as the height H1 of the automatic document feeder tray 10 increases.
As illustrated in
As subsequent sheets of the media 25 are fed into the machine 8, the number of sheets of media 25 on the document tray 10 becomes reduced. This reduction in the number of sheets of media 25 is detected by the sensor 45. In various examples, the sensor 45 may detect the change in the number of sheets of media 25 optically or by weight. In another example, a flexible mechanism 55 rests on the media 25, which pivots based on any of the sensed change in height H3 of the media 25 and the change in height H1 of the document tray 10, whereby the sensor 45 may detect the resulting change in the pivot angle φ of the mechanism 55. The sensor 45 may directly send a signal to one or more controllers 20 that control the height adjustments H1, H2 of the document tray 10 as well as the one or more rollers 15, respectively. Alternatively, the sensor 45 sends a signal to a processor 60, which then sends a corresponding signal to the one or more controllers 20 for performing the height adjustments H1, H2. As the number of sheets of media 25 become smaller due to being fed into the machine 8, the one or more controllers 20 automatically move the document tray 10 upwards without requiring user intervention to facilitate the adjustment of the document tray 10.
As the document tray 10 rises, the one or more controllers 20 adjust the height H2 of the one or more rollers 15. In this regard, not only do the one or more rollers have rotational motion 6 to facilitate the discharge of the media 25 out of the machine, but the one or more rollers 15 also have translational motion s corresponding to the adjustment of the height H2. In one example, the adjustment of the H2 of the one or more rollers 15 may be in the range of approximately 20-100 mm. The guide 35 bends away from the one or more rollers 15 thereby creating an unobstructed media discharge path 50 to facilitate an easy discharge of the media 25 from the machine 8 and onto the area 65; e.g., discharge tray, underneath the document tray 10.
The upward movement of the document tray 10 and the one or more rollers 15 creates a proportionally open area 65 under the document tray 10 such that the total height of the machine 8 does not change; only the height of the document tray 10 in relation to the area 65 under the document tray 10 changes. In other words, as the height of the document tray 10 increases, the area 65 under the document tray 10 also increases, but the area 66 above the document tray 10 decreases, thereby resulting in no change in the vertical/height footprint of the machine 8. As indicated in
The present disclosure has been shown and described with reference to the foregoing exemplary implementations. Although specific examples have been illustrated and described herein it is manifestly intended that the scope of the claimed subject matter be limited only by the following claims and equivalents thereof. It is to be understood, however, that other forms, details, and examples may be made without departing from the spirit and scope of the disclosure that is defined in the following claims.
Patent | Priority | Assignee | Title |
11572246, | Oct 21 2019 | KYOCERA Document Solutions Inc. | Document conveying apparatus that properly discharges documents regardless of amount of documents |
11623837, | Jan 31 2018 | Brother Kogyo Kabushiki Kaisha | Image reading apparatus |
11629027, | Mar 31 2021 | KYOCERA Document Solutions Inc. | Sheet conveying device, image processing apparatus, and sheet conveying method |
Patent | Priority | Assignee | Title |
10584007, | Jan 30 2017 | Canon Kabushiki Kaisha | Sheet feeding apparatus and image forming apparatus |
10737896, | Jan 31 2018 | Brother Kogyo Kabushiki Kaisha | Image reading apparatus |
10800630, | Feb 28 2018 | Brother Kogyo Kabushiki Kaisha | Image reading apparatus |
10841440, | Jan 31 2018 | Brother Kogyo Kabushiki Kaisha | Image reading apparatus |
10961074, | Mar 30 2018 | Brother Kogyo Kabushiki Kaisha | Image reading device |
2381430, | |||
5101241, | Nov 20 1989 | Kabushiki Kaisha Toshiba | Telescopic paper guide means movable to selected receiving trays |
6224051, | Oct 06 1994 | PFU Limited | Paper feed method and apparatus |
6234076, | Oct 26 1998 | Riso Kagaku Corporation | Image forming machine with sheet supplying and discharging tables |
7753365, | Mar 15 2007 | Murata Machinery, Ltd. | Image scanning apparatus and image scanner |
7828288, | Jun 10 2004 | S-PRINTING SOLUTION CO , LTD | Multi-functional peripheral device and adjustable paper output holder |
8827263, | Dec 05 2013 | Foxlink Image Technology Co., Ltd. | Paper feeding mechanism |
20050195450, | |||
20080224392, | |||
20100033774, | |||
20120223475, | |||
20130156484, | |||
20160257517, | |||
20190233239, | |||
20190238700, | |||
JP10167545, | |||
JP2005008283, | |||
JP2009044449, |
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